4.8 Article

Intrinsic Carrier Transport of Phase-Pure Homologous 2D Organolead Halide Hybrid Perovskite Single Crystals

期刊

SMALL
卷 14, 期 52, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201803763

关键词

2D RPP single crystals; field-effect transistors; intrinsic charge transport; photoluminescence; solution growth

资金

  1. Ministry of Science and Technology (MOST), Taiwan [105-2112-M-038-001-MY3, 107-2119-M-002-028-MY2]
  2. Center of Atomic Initiative for New Materials (AI-MAT), National Taiwan University, Taipei, Taiwan from the Featured Areas Research Center Program within Ministry of Education (MOE) in Taiwan

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This work reveals the intrinsic carrier transport behavior of 2D organolead halide perovskites based on phase-pure homologous (n = 1, 2, and 3) Ruddelsden-Popper perovskite (RPP) (BA)(2)(MA)(n-1)PbnI3n+1 single crystals. The 2D perovskite field effect transistors with high-quality exfoliated 2D perovskite bulk crystals are fabricated, and characteristic output and transfer curves are measured from individual single-crystal flakes with various n values under different temperatures. Unipolar n-type transport dominated the electrical properties of all these 2D RPP single crystals. The transport behavior of the 2D organolead halide hybrid perovskites exhibits a strong dependence on the n value and the mobility substantially increases as the ratio of the number of inorganic perovskite slabs per organic spacer increases. By extracting the effect of contact resistances, the corrected mobility values for n = 1, 2, and 3 are 2 x 10(-3), 8.3 x 10(-2), and 1.25 cm(2) V-1 s(-1) at 77 K, respectively. Furthermore, by combining temperature-dependent electrical transport and optical measurements, it is found that the origin of the carrier mobility dependence on the phase transition for 2D organolead halide perovskites is very different from that of their 3D counterparts. Our findings offer insight into fundamental carrier transport behavior of 2D organic-inorganic hybrid perovskites based on phase-pure homologous single crystals.

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